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Sustainable Lightweight Insulation Materials from Textile-Based Waste for the Automobile Industry

机译:可持续的轻量级绝缘材料来自纺织品浪费汽车行业

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摘要

Globally, automotive manufacturers are looking for ways to produce environmentally sustainable and recyclable materials for automobiles to meet new regulations and customer desires. To enable the needs for rapid response, this study investigated the feasibility of using waste and virgin wool fibres as cost-effective and sustainable alternatives for automotive sound and heat insulation using a chemical-free approach. Several properties of the currently available commercial automotive insulators were investigated in order to facilitate the designing of green wool-based needle-punched nonwoven materials. The effect of fibre diameter, nonwoven surface, layer structure, thickness, and area density on sound absorption and thermal resistance was investigated. The results suggested that the wool nonwoven materials, fabricated using waste and virgin wool fibres, possessed extremely efficient acoustic and thermal insulating properties comparable with the currently used commercial synthetic insulating materials. Besides, the wool nonwoven materials showed identical antibacterial and antifungal properties with a greater biodegradation rate (50%) than that of the commercial synthetic insulating materials. Hence, this study showed that natural wool fibres have the potential to be used as green, lightweight, and sustainable materials in the automobiles, while they qualify for Reuse–Recycle and Reuse–Recover purposes at the end-of-life of vehicles.
机译:在全球范围内,汽车制造商正在寻找为汽车生产环保和可回收材料的方法,以满足新的法规和客户欲望。为了实现快速响应的需求,本研究调查了使用无效的方法使用废物和维珍羊毛纤维作为汽车声音和隔热的可持续替代品的可行性。调查了目前可用的商业汽车绝缘体的几个性能,以便于设计绿色羊毛的针刺无纺布材料。研究了纤维直径,非织造表面,层结构,厚度和面积密度对吸声和热阻的影响。结果表明,羊毛非织造材料采用废物和初翼羊毛纤维制造,具有极其有效的声学和隔热性能,与目前使用的商业合成绝缘材料相当。此外,羊毛非织造材料显示出相同的抗菌和抗真菌性质,比商业合成绝缘材料的生物降解速率(50%)。因此,这项研究表明,天然羊毛纤维有可能用作汽车中的绿色,轻质和可持续的材料,同时它们有资格在车辆寿命结束时重新使用和再利用 - 恢复目的。

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